Abstract:
There is provided a luminescent light emitting device including a mirror layer, a luminescent material plate that is formed on one surface side of the mirror layer, and a conductive thin wire film in which a conductive thin wire is disposed and that lies on the other surface side of the mirror layer, in that luminescent light that is emitted by the luminescent material plate is emitted to the front that is one surface side of the luminescent material plate by the mirror layer, and damage done to the luminescent material plate is detected by a disconnection of the conductive thin wire.
Abstract:
A keyboard device including a plurality of transmission members which are provided corresponding to a plurality of keys arranged in parallel and each of which makes a rotating motion in response to a depression operation on a corresponding key, a plurality of hammer members which are provided corresponding to the plurality of keys and each of which makes a rotating motion in response to the rotating motion of the transmission member and thereby provides an action load to the key, and a plurality of interlock control sections each of which controls the rotating motion of the hammer member made in response to the rotating motion of the transmission member by a relative motion of an interlock projecting section of the transmission member with respect to a guide hole provided in the hammer member.
Abstract:
An information processing apparatus includes: a display device including a touch panel configured to detect a touch position where the touch panel is touched by a user operation, wherein display information is displayed on the display device; a display information storage unit configured to store the display information; an information display controller configured to display the display information on the display device; a touch position acquisition unit configured to acquire the touch position in response to the user operation on the display information; a region setting unit configured to set a certain region in the display information based on the touch position; a target information extraction unit configured to extract a target information from the certain region; a target information storage unit configured to store the target information; and a target information display controller configured to display the target information on the display device.
Abstract:
A nail printing apparatus is provided with a controlling unit for acquiring an end position on a tip side of a nail of a finger based on image data of an image of the finger, wherein the finger includes the nail having a nail tip portion and a nail back portion whose color is darker than a color of the nail tip portion. The controlling unit acquires luminance difference values which are difference in two of luminance values adjacent to each other in the image data, acquires a reference position where the luminance difference values represent a extreme value corresponding to a difference value between color of the nail tip portion and the nail back portion, and acquires the end position of the nail based on a position where the luminance difference values represent extreme value on the tip side from the reference position.
Abstract:
An information output apparatus for displaying information such as advertisements increases viewers' attention. A plurality of advertisement videos (id=1, 2, . . . ) stored in an advertisement video storage area 22b are projected onto a display unit 12 from a projection device 13 and reproduced, according to the definition of advertisement video reproduction order stored in an advertisement video reproduction definition storage area 22c. Upon switching the reproduction of each advertisement video, from among a plurality of switching effect images EP . . . (ID=1, 2, . . . ) that are assigned ID numbers in descending order of noticeability against the surrounding environment, i.e. in descending order of the complementary color ratio, and stored in a switching effect image storage area 22e, an image ID associated with higher noticeability is set when the non-operation time (the time during which no person is detected around the apparatus body) from the advertisement video reproduction start is longer. This non-operation time is measured and stored in a non-operation time storage area 22f. The switching effect image EP corresponding to the image ID is then reproduced.
Abstract:
A synchronous photographing system includes an operation terminal that performs a photographing operation; and a plurality of image capture apparatuses that performs synchronous photographing in response to an instruction from the operation terminal, in which, among the plurality of image capture apparatuses, one of a plurality of image capture apparatuses participating in synchronous photographing is set as a main image capture apparatus and other image capture apparatuses are set as sub image capture apparatuses, the main image capture apparatus performs control to perform synchronization of a photographing timing among the plurality of image capture apparatuses participating in synchronous photographing, and the operation terminal performs control to instruct the plurality of image capture apparatuses to perform instruction contents from a user.
Abstract:
A nail information detection device includes: a placement surface on which a finger having a nail is placed; an imaging unit which images the nail from one direction and acquires a image data; a moving unit which moves the imaging unit while keeping a distance between a measurement plane which is in contact with a peak position of the nail and parallel to the placement surface and the imaging unit constant; and a control unit configured to detect nail information including a first edge position and a second edge position on a shape of the nail.The control unit aligns a reference point of an imaging range of the imaging unit at the peak position and detects a position on the measurement plane of the nail edge based on the image data as the first edge position; and aligns the reference point at the first edge position and detects a position on the measurement plane of the nail edge based on the image data as the second edge position.
Abstract:
An exercise analysis device includes an acceleration acquiring unit, a first-data acquiring unit, a second-data acquiring unit and a third-data acquiring unit. The acceleration acquiring unit acquires acceleration of a user as the user performs an exercise. The first-data acquiring unit acquires a piece of a first data corresponding to a total amount of mechanical work of the exercise for a predetermined time based on the acceleration. The second-data acquiring unit acquires a piece of a second data corresponding to one of velocity and kinetic energy in a certain direction among directions related to the exercise for the predetermined time, based on the acceleration. The third-data acquiring unit acquires a piece of a third data corresponding to efficiency of the exercise based on the piece of the first data and the piece of the second data.
Abstract:
An image capturing apparatus (1) includes an image capturing unit (2), a display control unit (71), an overlap determination unit (72), and a recording control unit (74). The image capturing unit (22) sequentially captures an image of a subject. The display control unit (71) controls the image containing the subject image sequentially captured by the image capturing unit (22) and an indicator image for instructing recording of the subject image to be displayed on a display unit in such a way that the indicator image is superimposed on the image containing the subject image. The overlap determination unit (72) determines whether the indicator image and the subject image have overlapped. The recording control unit (74) controls the image containing the subject image to be recorded in a storage medium, when the overlap determination unit (72) determines that the indicator image and the subject image have overlapped.
Abstract:
In a histogram intersection calculating apparatus, a histogram intersection calculating unit calculates a histogram intersection to compare histograms of query data and target data to obtain a score value of the histogram intersection. A calculation controlling unit makes the histogram intersection calculating unit calculate the histogram intersection in descending order of bin number of the histogram of the query data from the bin number having the maximum frequency value by using frequency values in the bin numbers of the query data and frequency values in the bin numbers of the target data to obtain a score value of the histogram intersection.